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Computational Optical Imaging

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Computational Optical Imaging
Najniższa cena (z dostawą)
102,88 USD
Typowa cena8 051,66 PLN
Najniższa (90 dni)83,88 PLN
Liczba ofert4
Ostatnia aktualizacja4 dni temu
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Historia ceny (90 dni)
Pełna historia
2026-08-08 2026-08-15
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ZaktualizowanoCena
2026-08-0883,88
2026-08-1592,75
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SP SpringerNatureLink Shop INT 83,88 USD 19,00 USD 102,88 USD Dostępny 4 dni temu Zobacz ofertę
SP SpringerNatureLink Shop INT 92,75 EUR 0 zł 92,75 EUR Dostępny 4 dni temu Zobacz ofertę
SP SpringerNatureLink Shop INT 16 015,00 JPY 15,00 JPY 16 030,00 JPY Dostępny 4 dni temu Zobacz ofertę
SP Springer Nature Author 16 015,00 JPY 25,00 JPY 16 040,00 JPY Dostępny 1 tydzień temu Zobacz ofertę

Ceny i dostępność mogą ulec zmianie. Ostatnia aktualizacja: 15.08.2026 04:30.

EAN 9789819714551
Springer Nature
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This book highlights a comprehensive introduction to the principles and calculation methods of computational optical imaging. Integrating optical imaging and computing technology to achieve significant performance improvements, computational optical imaging has become an active research field in optics. It has given rise to the emerging of new concepts such as computational imaging, computational measurement and computational photography. As high-performance image detectors make image measurements discrete and digital, images are mostly recorded in the form of discrete data, almost replacing the continuous medium used for pattern recording. Computational optical imaging technology has become an effective way for people to study microscopic imaging. At present, different imaging systems are composed of continuous optical elements such as lenses and prisms or discrete optical elements such as spatial light modulators or digital micro-mirror devices. The current computing technology has permeated all aspects of imaging systems and gradually promotes the digitization of optical imaging systems. This book summarizes the representative work done in this field and introduces the latest results. Computing technology plays an important bridging role between theories of optics and experimental systems, which inspires more comprehensive and in-depth research. It has the advantages of high repeatability, flexibility, strong computing power and low cost. In this multidisciplinary field, researchers in computer science, optics and information science have joined together to extend its depth and breadth. Targeting cutting-edge issues to be solved in computational optics, this book introduces a variety of methods that involve theoretical innovations and technical breakthroughs in imaging resolution, the field of view, imaging speed, and computing speed. It intends to provide a handy reference and technical support for graduate students, researchers and professionals engaged in the study and practice of computational optical imaging.

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